一种用于微血管持久栓塞的原位固化、剪切反应生物材料。

IF 9.6 2区 医学 Q1 ENGINEERING, BIOMEDICAL
Quynh P. Pham, Jeffrey V. Groom II, Chander Sadasivan, David J. Fiorella, David C. Madoff, Lee-Jae Guo, Michael Fornaciari, Courtney Guertin, Craig Wiltsey, Lee Core, Jonathan Merlo, William Wustenberg, Renu Virmani, Adam S. Arthur, Robert S. Langer, George M. Whitesides, Upma Sharma
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引用次数: 0

摘要

血管内栓塞是一种微创技术,通过各种栓塞剂选择性地阻塞供应病理结构的血管。在许多情况下,理想的情况是栓子远端穿透到微血管水平,这样可以最大限度地使血管断流。现有的药物表现出不一致的远端渗透,并存在其他局限性,包括近端反流倾向、输注时患者疼痛、缺乏透视透视透明度、导管粘连的可能性、易再通以及其他可用性挑战。NeoCast是一种原位固化、无溶剂、无粘合剂的生物材料,由聚二甲基硅氧烷、三氧化二铋和气相二氧化硅组成,具有剪切响应特性,可通过商用微导管进行手动注射,管腔大小不一。本文报道了动脉和静脉临床前解剖中有和没有血流停搏的栓塞表现。NeoCast可重复性地实现微血管闭塞的远端穿透率,优于现有的药物,具有出色的透视可见性,并提供持久的闭塞。NeoCast输注血管时有轻度炎症,直接植入脑组织时无神经毒性。工程NeoCast材料有望成为下一代液体栓塞剂,用于需要远端微血管闭塞的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

An In Situ Curing, Shear-Responsive Biomaterial Designed for Durable Embolization of Microvasculature

An In Situ Curing, Shear-Responsive Biomaterial Designed for Durable Embolization of Microvasculature

An In Situ Curing, Shear-Responsive Biomaterial Designed for Durable Embolization of Microvasculature

An In Situ Curing, Shear-Responsive Biomaterial Designed for Durable Embolization of Microvasculature

An In Situ Curing, Shear-Responsive Biomaterial Designed for Durable Embolization of Microvasculature

Endovascular embolization is a minimally-invasive technique whereby blood vessels supplying pathological structures are selectively occluded with various embolic agents. In many scenarios, it is desirable for the embolic to distally penetrate to the level of the microvasculature, which maximizes devascularization. Existing agents exhibit inconsistent distal penetration and have other limitations including tendency for proximal reflux, patient pain during infusion, lack of fluoroscopic radiopacity, potential for catheter adhesion, susceptibility to recanalization, and other usability challenges. NeoCast is an in situ curing, solvent-free, non-adhesive biomaterial composed of polydimethylsiloxane, bismuth trioxide, and fumed silica that possesses shear-responsive properties enabling manual injectability through commercially-available microcatheters with large and small diameter lumens. Here, embolization performance with and without flow arrest, in both arterial and venous preclinical anatomies is reported. NeoCast reproducibly achieves a rate of distal penetration with microvascular occlusion that is superior to existing agents, exhibits excellent fluoroscopic visibility, and provides durable occlusion. There is mild inflammation when NeoCast is infused into blood vessels and absence of neurotoxicity when implanted directly into brain tissue. The engineered NeoCast material is poised to become a next-generation, liquid embolic agent for applications in which distal microvascular occlusion is desired.

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来源期刊
Advanced Healthcare Materials
Advanced Healthcare Materials 工程技术-生物材料
CiteScore
14.40
自引率
3.00%
发文量
600
审稿时长
1.8 months
期刊介绍: Advanced Healthcare Materials, a distinguished member of the esteemed Advanced portfolio, has been dedicated to disseminating cutting-edge research on materials, devices, and technologies for enhancing human well-being for over ten years. As a comprehensive journal, it encompasses a wide range of disciplines such as biomaterials, biointerfaces, nanomedicine and nanotechnology, tissue engineering, and regenerative medicine.
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